Article citationsMore>>
Granda-Gutiérrez, E.E., López-Callejas, R., Pe?a-Eguiluz, R., Valencia, R.A., Mercado-Cabrera, A., Barocio, S.R., de la Piedad-Beneitez, A., Benítez-Read, J.S. and Pacheco-Sotelo, J.O. (2008) V-I Curves and Plasma Parameters in a High Density DC Glow Discharge Generated by a Current-Source. Journal of Physics: Conference Series, 100, 062019.
http://dx.doi.org/10.1088/1742-6596/100/6/062019
has been cited by the following article:
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TITLE:
Effect of Nitriding Current Density on the Surface Properties and Crystallite Size of Pulsed Plasma-Nitrided AISI 316L
AUTHORS:
J. C. Díaz-Guillén, E. E. Granda-Gutiérrez, G. Vargas-Gutiérrez, M. R. Díaz-Guillén, J. A. Aguilar-Martínez, L. Álvarez-Contreras
KEYWORDS:
Plasma Nitriding, Strain, Crystallite Size, Hardness, Wear, Stainless
JOURNAL NAME:
Journal of Materials Science and Chemical Engineering,
Vol.3 No.1,
January
20,
2015
ABSTRACT: In this work, plasma-nitrided AISI 316L
stainless steel samples were performed by ion nitriding process under pulsed
direct current (DC) discharge at different current densities (1 to 2.5 mA/ cm2).
The effect of nitriding current density on the size of crystalline coherently
diffracting domains (crystallite size) and strain grade was investigated using
X-ray diffraction (XRD) coupled with Williamson-Hall method. Additionally,
hardness and wear resistance of the nitriding layer were characterized using a
Vickers indenter and pin-on-disk technique respectively. Results showed a
decrease in crystallite size from 99 nm for untreated samples to 1.4 nm for
samples nitrided at 2.5 mA/cm2 promoted both: an increase in hardness from 226
HV25g to 1245 HV25g, and a considerably decrease in volume loss by wear effect.